If the earth is swinging around the sun once a year in a mighty
path or orbit, there must be changes of its position in space
comparable in size with the orbit itself. And the stars ought to
shift their apparent places on the sky to correspond with these
changes in the terrestrial observer's position. The phenomenon is
analogous to what occurs when we look out of a room, first through
one window, and then through another. Any object on the opposite
side of the street will be seen in a changed direction, on account
of the observer's having shifted his position from one window to
the other. If the object seemed to be due north when seen from
the first window, it will, perhaps, appear a little east of north
from the other. But this change of direction will be comparatively
small, if the object under observation is very far away, in
comparison with the distance between the two windows.
This is what occurs with the stars. The earth's orbit, vast as
it is, shrinks into almost absolute insignificance when compared
with the profound distances by which we are sundered from even the
nearest fixed stars. Consequently, the shifting of their positions
is also very small--so small as to be near the extreme limit
separating that which is measurable from that which is beyond human
ken.
Photography lends itself most readily to a study of this matter.
Suppose a certain star is suspected of "having a parallax." In
other words, we have reason to believe it near enough to admit of
a successful measurement of distance. Perhaps it is a very bright
star; and, other things being equal, it is probably fair to assume
that brightness signifies nearness. And astronomers have certain
other indications of proximity that guide them in the selection of
proper objects for investigation, though such evidence, of course,
never takes the place of actual measurement.
The star under examination is sure to have near it on the sky a
number of stars so very small that we may safely take them to be
immeasurably far away. The parallax star is among them, but not
of them. We see it projected upon the background of the heavens,
though it may in reality be quite near us, astronomically speaking.
If this is really so, and the star, therefore, subject to the
slight parallactic shifting already mentioned, we can detect it by
noting the suspected star's position among the surrounding small
stars. For these, being immeasurably remote, will remain unchanged,
within the limits of our powers of observation, and thus serve
as points of reference for marking the apparent shifting of the
brighter star we are actually considering.
Public-domain text, read in full here on John Shaqi.
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